Reactors

Three Families.
Nine Designs.
One Platform.

Every design is an incremental build on shared, proven IP, not a capital-heavy program from scratch.

One Platform · 3 Cores · 9 Configs

A Portfolio,
Not a One-Off

Nine configurations spring from a few shared cores: common materials, fuels, and modules, with coolants swapped per mission. A family of reactors that de-risk one another.

Terrestrial · 5 Dual-Use · 2 flagship Space · 2
Reactor core with control drums sweeping back and forth
Family 01 · Terrestrial

Power for Earth

Resilient, transportable reactors for defense bases, remote sites, industry, and the grid.

Natural-uranium reactor
Proliferation-Resistant

Natural-Uranium

Runs on natural, unenriched uranium, sidestepping the enrichment supply chain and easing safeguards.

Fuel
Natural U
Enrich.
None
Commercial microreactorMost Economical
Commercial · COTS · Mass-Manufacturable

Commercial Microreactor

A compact LEU/HALEU microreactor built from qualified off-the-shelf modules and engineered around the lowest cost per kilowatt for fleet-scale deployment.

Fuel
LEU / HALEU
Target
Lowest $/kW
TRU fast reactor
Fast Reactor · Actinide Burner

TRU Fast Reactor

A fast-spectrum core that turns transuranic waste into power, closing the fuel cycle.

Fuel
TRU
Spectrum
Fast
High-temperature gas reactor
High-Temperature Gas Reactor

HTGR

A HeXe-cooled core delivering very high outlet temperatures for power and process heat.

Coolant
HeXe
Output
High-temp
Liquid-metal-cooled fast reactor
Liquid-Metal Fast Reactor

Liquid-Metal

A NaK-cooled fast reactor: high power density and excellent heat transfer at near-atmospheric pressure.

Coolant
NaK
Spectrum
Fast
Family 02 · Dual-Use · The Bridge

One Core. Earth or Orbit.

Launch-safe cores engineered to serve both worlds: silent power for a forward operating site today, a lunar outpost or deep-space mission tomorrow.

Compact space reactor under 200 kgFlagship Core
Flight Reactor · Power & Propulsion

Space Reactor · < 200 kg

A sub-quarter-tonne reactor compact enough to ship to the field and light enough to fly. The crossover core at the heart of the portfolio.

Power
1-20 kWe
Mass
< 200 kg
Megawatt-class bridge reactor, about one tonneFlagship Core
Megawatt Bridge · Power & Propulsion

MW Reactor · 1 Ton

A megawatt-scale bridge reactor at roughly one tonne: large surface bases on Earth or the Moon today, deep-space transit tomorrow.

Power
≈ 1 MWe
Mass
≈ 1 Ton
The Bridge

Same Core. Two Missions. One Supply Chain.

  • On Earth : silent, fuel-independent power for forward outposts far from the grid
  • In space : surface power and propulsion for landers, rovers, and crewed outposts
  • Capital-efficient : one qualified core de-risks two markets at once

Discuss a Mission Fit

Family 03 · Space

Propulsion Beyond Earth

Two distinct flight-class propulsion designs, aligned to NASA and DoW space-nuclear roadmaps.

Nuclear electric propulsion reactor
Nuclear Electric Propulsion

Electric Propulsion (NEP)

A high-temperature reactor paired with power conversion to drive efficient electric thrusters for cislunar logistics and deep-space transit.

Type
NEP
Profile
High-eff.
Nuclear thermal propulsion reactor
Nuclear Thermal Propulsion

Thermal Propulsion (NTP)

A high-thrust thermal-propulsion core for fast crewed missions, building on our cislunar-demonstration and propulsion reference-design experience.

Type
NTP
Profile
High-thrust

Need a Reactor Designed, Optimized, or Tested?

Tell us about your mission, terrestrial or space, and we'll show you the fastest credible path from concept to criticality.